Lignin modified PET (Polyethylene Terephthalate) composite material and preparation method thereof
A composite material and lignin technology, applied in the field of lignin-modified PET composite materials and its preparation, to achieve the effects of increasing phenyl content, reducing production costs, and improving heat resistance
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Embodiment 1
[0021] A preparation method of lignin modified PET composite material, comprising the following steps:
[0022] (1) Esterification reaction: add alkali lignin, ethylene glycol, terephthalic acid and zinc acetate into the reaction kettle according to the mass ratio of 1:30:68.8:0.2, and gradually heat up to 200°C under the protection of nitrogen. The pressure of the reactor was controlled at 0.2MPa, and after reacting for 2 hours at a stirring speed of 100rpm, lignin-modified ethylene terephthalate was obtained;
[0023] (2) Polycondensation reaction. Control the temperature of the lignin-modified ethylene terephthalate prepared in step (1) at 220°C, reduce the pressure in the reactor to 0.03MPa with a vacuum pump, react at a stirring speed of 100rpm for 2 hours, and stop heating , after the temperature in the reactor dropped to 200°C, the material was discharged to obtain a lignin-modified PET composite material, and the heat resistance test results are shown in Table 1.
Embodiment 2
[0025] A preparation method of lignin modified PET composite material, comprising the following steps:
[0026] (1) Esterification reaction: add lignosulfonic acid, ethylene glycol, terephthalic acid and zinc acetate into the reaction kettle according to the mass ratio of 1:30:68.8:0.2, and gradually heat up to 200°C under nitrogen protection , the pressure of the reactor was controlled at 0.2MPa, and after reacting for 2 hours at a stirring speed of 100rpm, lignin-modified ethylene terephthalate was obtained;
[0027] (2) Polycondensation reaction. Control the temperature of the lignin-modified ethylene terephthalate prepared in step (1) at 220°C, reduce the pressure in the reactor to 0.03MPa with a vacuum pump, react at a stirring speed of 100rpm for 2 hours, and stop heating , after the temperature in the reactor dropped to 200°C, the material was discharged to obtain a lignin-modified PET composite material, and the heat resistance test results are shown in Table 1.
Embodiment 3
[0029] A preparation method of lignin modified PET composite material, comprising the following steps:
[0030] (1) Esterification reaction: Add magnesium lignosulfonate, ethylene glycol, terephthalic acid and zinc acetate into the reactor according to the mass ratio of 1:30:68.8:0.2, and gradually heat up to 200 °C under nitrogen protection. °C, the pressure of the reactor was controlled at 0.2MPa, and after 2 hours of reaction at a stirring speed of 100rpm, lignin-modified ethylene terephthalate was obtained;
[0031] (2) Polycondensation reaction. Control the temperature of the lignin-modified ethylene terephthalate prepared in step (1) at 220°C, reduce the pressure in the reactor to 0.03MPa with a vacuum pump, react at a stirring speed of 100rpm for 2 hours, and stop heating , after the temperature in the reactor dropped to 200°C, the material was discharged to obtain a lignin-modified PET composite material, and the heat resistance test results are shown in Table 1.
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